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| Indexado |
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| DOI | 10.1016/J.DIAMOND.2024.111546 | ||||
| Año | 2024 | ||||
| Tipo | artículo de investigación |
Citas Totales
Autores Afiliación Chile
Instituciones Chile
% Participación
Internacional
Autores
Afiliación Extranjera
Instituciones
Extranjeras
Amorphous carbon nanowires (NW) are a fundamental piece in the study of novel nanoarchitectures with unexpected mechanical properties. However, the failure mechanism of amorphous carbon NW is still missing. In this study, classical molecular dynamics was employed to conduct stress-strain tests to address the mechanical response of amorphous carbons NW with different radii. This research characterizes the mechanical properties of aC NW with different sp(3) contents, including Youngs modulus and ultimate tensile stress. Our study reveals that plastic deformation is mediated by chemical modifications in carbon bonding, leading to transitions from sp(2) to sp(3) and vice versa. We observed that denser amorphous carbon materials undergo a transition from sp(3) to sp(2) bonding prior to failure, facilitated by the recombination of sp(2) clusters. Additionally, plastic deformation in amorphous carbon NW is facilitated by the formation of shear transformation zones and nanovoids, with the deformation mechanism strongly dependent on the average coordination of carbon atoms. These insights provide valuable information for designing nanomaterials with tailored mechanical properties.
| WOS |
|---|
| Physics, Condensed Matter |
| Physics, Applied |
| Materials Science, Multidisciplinary |
| Materials Science, Coatings & Films |
| Scopus |
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| Chemistry (All) |
| Materials Chemistry |
| Electrical And Electronic Engineering |
| Electronic, Optical And Magnetic Materials |
| Mechanical Engineering |
| Physics And Astronomy (All) |
| SciELO |
|---|
| Sin Disciplinas |
| Ord. | Autor | Género | Institución - País |
|---|---|---|---|
| 1 | Roco, Fiorella R. | - |
Universidad Católica del Maule - Chile
|
| 2 | Clark, J. | - |
Pontificia Universidad Católica de Chile - Chile
|
| 3 | ALLENDE-PRIETO, SEBASTIAN EDUARDO | Hombre |
Universidad de Santiago de Chile - Chile
Centro para el Desarrollo de la Nanociencia y la Nanotecnologia - Chile |
| 4 | Soto, W. | - |
Universidad Católica del Maule - Chile
|
| 5 | AMIGO-AHUMADA, NICOLAS RAFAEL | Hombre |
Universidad Tecnológica Metropolitana - Chile
|
| 6 | Figueroa, Juan | Hombre |
Universidad Católica del Maule - Chile
|
| 7 | Bringa, Eduardo M. | Hombre |
Univ Mendoza - Argentina
Universidad de Mendoza - Argentina |
| 8 | VALENCIA-ARROYAVE, FELIPE | Hombre |
Universidad Católica del Maule - Chile
Universidad de Santiago de Chile - Chile Centro para el Desarrollo de la Nanociencia y la Nanotecnologia - Chile |
| Fuente |
|---|
| DICYT |
| Basal Program for Centers of Excellence |
| Comisión Nacional de Investigación Científica y Tecnológica |
| Fondecyt de Iniciación |
| NLHPC |
| FONDECYT Postdoctorado |
| Departamento de Investigaciones Científicas y Tecnológicas, Universidad de Santiago de Chile |
| Fondo Nacional de Investigaciones Cientificas y Tecnologicas (FONDECYT, Chile) |
| Fondo Nacional de Investigaciones Cientificas y Tecnologicas |
| Agencia Nacional de Investigación y Desarrollo |
| SIIP-UNCuyo |
| SIIP |
| Doctoral program Doctorado en Ingenieria at the Universidad Catolica del Maule |
| Agradecimiento |
|---|
| This work was supported by the Fondo Nacional de Investigaciones Cientificas y Tecnologicas (FONDECYT, Chile) under grants #1190662, #1240655 (FV) , FONDECYT de Iniciacion #11190484 (FV) and FONDECYT Postdoctorado #3230709 (JC) . The authors thank the Basal Program for Centers of Excellence, Grant AFB220001 CEDENNA, ANID. This research was partially supported by the supercomputing infrastructure of the NLHPC (ECM-02) . EMB thanks from SIIP-UNCuyo 06/M008-T1, PICTO-UUMM-2019-00048, and PIP 2021-2023 11220200102578CO grants. SA thanks DICYT regular 042431AP. FR thanks the grant of the doctoral program Doctorado en Ingenieria at the Universidad Catolica del Maule. |
| This work was supported by the Fondo Nacional de Investigaciones Cient\u00EDficas y Tecnol\u00F3gicas (FONDECYT, Chile) under grants #1190662, #1240655 (FV), FONDECYT de Iniciaci\u00F3n #11190484 (FV) and FONDECYT Postdoctorado #3230709 (JC). The authors thank the Basal Program for Centers of Excellence, Grant AFB220001 CEDENNA, ANID. This research was partially supported by the supercomputing infrastructure of the NLHPC (ECM-02). EMB thanks from SIIP-UNCuyo 06/M008-T1, PICTO-UUMM-2019-00048, and PIP 2021-2023 11220200102578CO grants. SA thanks DICYT regular 042431AP. FR thanks the grant of the doctoral program Doctorado en Ingenieria at the Universidad Cat\u00F3lica del Maule. |
| This work was supported by the Fondo Nacional de Investigaciones Cient\u00EDficas y Tecnol\u00F3gicas (FONDECYT, Chile) under grants #1190662, #1240655 (FV), FONDECYT de Iniciaci\u00F3n #11190484 (FV) and FONDECYT Postdoctorado #3230709 (JC). The authors thank the Basal Program for Centers of Excellence, Grant AFB220001 CEDENNA, ANID. This research was partially supported by the supercomputing infrastructure of the NLHPC (ECM-02). EMB thanks from SIIP-UNCuyo 06/M008-T1, PICTO-UUMM-2019-00048, and PIP 2021-2023 11220200102578CO grants. SA thanks DICYT regular 042431AP. FR thanks the grant of the doctoral program Doctorado en Ingenieria at the Universidad Cat\u00F3lica del Maule. |